The Visual Problem of High Energy Physics, Gravitation and Cosmology

Authors

  • Leo G. Sapogin

  • V. A. Dzhanibekov

  • Yu. A. Ryabov

unitary quantum theory, standard model, quantum electrodynamics, maxwell equations, schrdinger equation, solid state

Abstract

This article describes a model of Unitary Quantum Field theory where the particle is represented as a wave packet. The frequency dispersion equation is chosen so that the packet periodically appears and disappears without form changings. The envelope of the process is identified with a conventional wave function. Equation of such a field is nonlinear and relativistically invariant. With proper adjustments, they are reduced to Dirac, Schrdinger and Hamilton-Jacobi equations. A number of new experimental effects have been predicted both for high and low energies. Fine structure constant (1/137) was determined in 1988, masses of numerous elementary particles starting from electron were evaluated in 2007 with accuracy less than 1 %.2 pentaquarks, +barion, Higgs boson and particle 28 GeV were discovered 11 years later, all of them were evaluated with high accuracy before.

How to Cite

The Visual Problem of High Energy Physics, Gravitation and Cosmology. (2019). Global Journal of Science Frontier Research, 19(A2), 1-36. https://journalofscience.org/index.php/GJSFR/article/view/2442

References

The Visual Problem of High Energy Physics, Gravitation and Cosmology

Published

2019-01-15

How to Cite

The Visual Problem of High Energy Physics, Gravitation and Cosmology. (2019). Global Journal of Science Frontier Research, 19(A2), 1-36. https://journalofscience.org/index.php/GJSFR/article/view/2442